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Development of Heavyweight Self-Compacting Concrete and Ambient-Cured Heavyweight Geopolymer Concrete Using Magnetite Aggregates

机译:利用磁铁矿骨料开发自重密实混凝土和环境固化重质地质聚合物混凝土

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摘要

Heavyweight self-compacting concrete (HWSCC) and heavyweight geopolymer concrete (HWGC) are new types of concrete that integrate the advantages of heavyweight concrete (HWC) with self-compacting concrete (SCC) and geopolymer concrete (GC), respectively. The replacement of natural coarse aggregates with magnetite aggregates in control SCC and control GC at volume ratios of 50%, 75%, and 100% was considered in this study to obtain heavyweight concrete classifications, according to British standards, which provide proper protection from sources that emit harmful radiations in medical and nuclear industries and may also be used in many offshore structures. The main aim of this study is to examine the fresh and mechanical properties of both types of mixes. The experimental program investigates the fresh properties of HWSCC and HWGC through the slump flow test. However, J-ring tests were only conducted for HWSCC mixes to ensure the flow requirements in order to achieve self-compacting properties. Moreover, the mechanical properties of both type of mixes were investigated after 7 and 28 days curing at an ambient temperature. The standard 100 × 200 mm cylinders were subjected to compressive and tensile tests. Furthermore, the flexural strength were examined by testing 450 × 100 × 100 mm prisms under four-point loading. The flexural load-displacement relationship for all mixes were also investigated. The results indicated that the maximum compressive strength of 53.54 MPa was achieved by using the control SCC mix after 28 days. However, in HWGC mixes, the maximum compressive strength of 31.31 MPa was achieved by 25% magnetite replacement samples. The overall result shows the strength of HWSCC decreases by increasing magnetite aggregate proportions, while, in HWGC mixes, the compressive strength increased with 50% magnetite replacement followed by a decrease in strength by 75% and 100% magnetite replacements. The maximum densities of 2901 and 2896 kg/m3 were obtained by 100% magnetite replacements in HWSCC and HWGC, respectively.
机译:重量级自密实混凝土(HWSCC)和重量级土聚合物混凝土(HWGC)是将混凝土的优点与自密实混凝土(SCC)和地聚合物混凝土(GC)分别整合的新型混凝土。根据英国标准,本研究中考虑以50%,75%和100%的体积比在对照SCC和对照GC中用磁铁矿骨料替代天然粗骨料,以获得重量级混凝土,从而提供了适当的保护,免受污染会在医疗和核工业中释放有害辐射,也可能在许多海上结构中使用。这项研究的主要目的是研究两种混合物的新鲜和机械性能。该实验程序通过坍落流动试验研究了HWSCC和HWGC的新鲜特性。但是,仅对HWSCC混合物进行J形环测试,以确保流量要求,以实现自压缩性能。此外,在环境温度下固化7天和28天后,研究了两种类型混合物的机械性能。对100×200 mm的标准圆柱体进行了压缩和拉伸测试。此外,通过在四点载荷下测试450×100×100 mm棱镜来检查弯曲强度。还研究了所有混合物的挠曲载荷-位移关系。结果表明,使用对照SCC混合物28天后可达到53.54 MPa的最大抗压强度。但是,在HWGC混合物中,用25%的磁铁矿替代样品可达到31.31 MPa的最大抗压强度。总体结果表明,HWSCC的强度会随着磁铁矿集料比例的增加而降低,而在HWGC混合料中,抗压强度随着50%磁铁矿的替代而增加,随后强度降低75%和100%磁铁矿的替代。在HWSCC和HWGC中分别进行100%磁铁矿置换,最大密度分别为2901和2896 kg / m 3

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